Abstract
The effects of extreme loads on tubbing elements have been studied as part of the joint research project “Automated generation of information and protection of critical infrastructures in the event of a disaster (AISIS)”.
Novel sensing techniques and protective measures have been developed to monitor and enhance the robustness of tubbing tunnels. Amongst other topics, Ed. Züblin AG developed a new coupling system to increase the resistance of tubbing tunnels in case of explosive loads.
The research work has been supported by the German Federal Ministry of Education and Research in the research program ,,für die zivile Sicherheit“.
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References
Müller, H.S.: AISIS, Teilvorhaben: Kurzzeitdynamische Baugrund-Bauwerks-Interaktion und Entwicklung brandbeständiger ultrahochfester Betone, Teilbereich: Entwicklung brandbeständiger ultrahochfester Betone für hochdynamische Beanspruchungen: Schlussbericht (2011)
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Kudella, P., Osinov, V., Huber, G., Chrisopoulos, S., Triantafyllidis, T.: AISIS - Teilvorhaben Kurzzeitdynamische Baugrund-Bauwerks-Interaktion, Schlussbericht (2012)
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© 2012 Springer-Verlag Berlin Heidelberg
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Niklasch, C., Mayer, PM. (2012). Enhancing Robustness of Tubbing Tunnels in Case of Extreme Loads. In: Aschenbruck, N., Martini, P., Meier, M., Tölle, J. (eds) Future Security. Future Security 2012. Communications in Computer and Information Science, vol 318. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-33161-9_26
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DOI: https://doi.org/10.1007/978-3-642-33161-9_26
Publisher Name: Springer, Berlin, Heidelberg
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